Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.

We combined components of a previous assay referred to as Molecular Inversion Probe (MIP) with a complete gap filling strategy, creating a versatile powerful one-primer multiplex amplification system. As a proof-of-concept, this novel method, which employs a Connector Inversion Probe (CIPer), was te...

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Main Authors: Michael S Akhras, Magnus Unemo, Sreedevi Thiyagarajan, Pål Nyrén, Ronald W Davis, Andrew Z Fire, Nader Pourmand
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2007-09-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC1976392?pdf=render
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spelling doaj-5e957c84cac440b58e8f5225d3a312cb2020-11-25T01:41:53ZengPublic Library of Science (PLoS)PLoS ONE1932-62032007-09-0129e91510.1371/journal.pone.0000915Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.Michael S AkhrasMagnus UnemoSreedevi ThiyagarajanPål NyrénRonald W DavisAndrew Z FireNader PourmandWe combined components of a previous assay referred to as Molecular Inversion Probe (MIP) with a complete gap filling strategy, creating a versatile powerful one-primer multiplex amplification system. As a proof-of-concept, this novel method, which employs a Connector Inversion Probe (CIPer), was tested as a genetic tool for pathogen diagnosis, typing, and antibiotic resistance screening with two distinct systems: i) a conserved sequence primer system for genotyping Human Papillomavirus (HPV), a cancer-associated viral agent and ii) screening for antibiotic resistance mutations in the bacterial pathogen Neisseria gonorrhoeae. We also discuss future applications and advances of the CIPer technology such as integration with digital amplification and next-generation sequencing methods. Furthermore, we introduce the concept of two-dimension informational barcodes, i.e. "multiplex multiplexing padlocks" (MMPs). For the readers' convenience, we also provide an on-line tutorial with user-interface software application CIP creator 1.0.1, for custom probe generation from virtually any new or established primer-pairs.http://europepmc.org/articles/PMC1976392?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Michael S Akhras
Magnus Unemo
Sreedevi Thiyagarajan
Pål Nyrén
Ronald W Davis
Andrew Z Fire
Nader Pourmand
spellingShingle Michael S Akhras
Magnus Unemo
Sreedevi Thiyagarajan
Pål Nyrén
Ronald W Davis
Andrew Z Fire
Nader Pourmand
Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.
PLoS ONE
author_facet Michael S Akhras
Magnus Unemo
Sreedevi Thiyagarajan
Pål Nyrén
Ronald W Davis
Andrew Z Fire
Nader Pourmand
author_sort Michael S Akhras
title Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.
title_short Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.
title_full Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.
title_fullStr Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.
title_full_unstemmed Connector inversion probe technology: a powerful one-primer multiplex DNA amplification system for numerous scientific applications.
title_sort connector inversion probe technology: a powerful one-primer multiplex dna amplification system for numerous scientific applications.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2007-09-01
description We combined components of a previous assay referred to as Molecular Inversion Probe (MIP) with a complete gap filling strategy, creating a versatile powerful one-primer multiplex amplification system. As a proof-of-concept, this novel method, which employs a Connector Inversion Probe (CIPer), was tested as a genetic tool for pathogen diagnosis, typing, and antibiotic resistance screening with two distinct systems: i) a conserved sequence primer system for genotyping Human Papillomavirus (HPV), a cancer-associated viral agent and ii) screening for antibiotic resistance mutations in the bacterial pathogen Neisseria gonorrhoeae. We also discuss future applications and advances of the CIPer technology such as integration with digital amplification and next-generation sequencing methods. Furthermore, we introduce the concept of two-dimension informational barcodes, i.e. "multiplex multiplexing padlocks" (MMPs). For the readers' convenience, we also provide an on-line tutorial with user-interface software application CIP creator 1.0.1, for custom probe generation from virtually any new or established primer-pairs.
url http://europepmc.org/articles/PMC1976392?pdf=render
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